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Mathematical simulation of melt flow, heat transfer and non-equilibrium solidification in planar flow casting

机译:平面流铸中熔体流动,传热和非平衡凝固的数学模拟

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This paper describes a two-dimensional model of fluid flow and heat transfer with phase change for the planar flow casting process. Boundary-layer theory is used to model fluid flow and heat transfer in the solidification puddle, and a semi-implicit finite difference scheme is used to solve the corresponding governing equations. In order to take into account non-equilibrium solidification with melt undercooling, a kinetics relationship between the interface velocity and the interface undercooling is incorporated in the model. The location of the interface and its temperature are calculated using an interface tracking technique based on control volume integrals with element subdivision. Besides the interface velocity and temperature, the model also predicts the shape of the downstream meniscus formed between the crucible and the moving wheel. Some results for the planar flow casting of an aluminium melt with undercooling are also presented, including predictions of the streamlines and isotherms in the puddle. The effect of the interface kinetics and melt undercooling on the solidification characteristics is quantified through comparison with an equilibrium solidification model. [References: 39]
机译:本文描述了平面流铸工艺中具有相变的流体流动和传热的二维模型。边界层理论被用来模拟凝固水坑中的流体流动和传热,半隐式有限差分法被用来求解相应的控制方程。为了考虑熔融过冷时的非平衡凝固,在模型中考虑了界面速度和界面过冷之间的动力学关系。界面的位置及其温度是使用界面跟踪技术基于控制体积积分和元素细分计算的。除了界面速度和温度,该模型还预测了坩埚和动轮之间形成的下游弯月面的形状。还介绍了采用过冷的铝熔体进行平面流铸的一些结果,包括对熔池中流线和等温线的预测。通过与平衡凝固模型比较,可以量化界面动力学和熔体过冷对凝固特性的影响。 [参考:39]

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